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Experimental assessment of a PCM to air heat exchanger storage system for building ventilation application

机译:用于建筑物通风应用的PCM空气热交换器存储系统的实验评估

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摘要

This paper presents a heat exchanger prototype containing PCM material designed to provide a 1 kW heating power during 2 h (i.e. energy storage of 2 kWh). The exchanger is tested in a closed-loop wind tunnel, used to provide constant airflow rates with temperature changes selected so that the PCM is allowed to melt, then to solidify. Temperature and air velocity measurements are achieved for eight airflow rates and the heating power is estimated. The second objective of this work is to provide detailed results suitable with the validation of numerical models. Therefore, the geometry of the exchanger is detailed and the uncertainty associated with the heating power measurement is given. Results show that enough energy is stored in the exchanger, yet the heating power is lower than 1 kW before 2 h because of the use of a constant airflow rate during the tests. On the other hand, the global behaviour of the heat exchanger is rather simple, which gives confidence in using a simplified approach in further work and help with optimizing the current prototype.
机译:本文介绍了一种包含PCM材料的热交换器原型,该材料设计用于在2小时内提供1 kW的加热功率(即2 kWh的能量存储)。该交换器在一个封闭的风洞中进行测试,该风洞用于在选定温度变化的情况下提供恒定的气流速率,从而使PCM熔化然后凝固。针对八个气流速率实现了温度和风速测量,并估算了加热功率。这项工作的第二个目的是提供适合于数值模型验证的详细结果。因此,详细说明了交换器的几何形状,并给出了与热功率测量相关的不确定性。结果表明,交换器中存储了足够的能量,但由于在测试过程中使用了恒定的气流速率,因此在2 h之前的加热功率低于1 kW。另一方面,热交换器的整体性能相当简单,这使人们有信心在以后的工作中使用简化的方法,并有助于优化当前的原型。

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